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Comparison of corrosion inhibitor performance based on green corrosion inhibitor of extract leaf tobacco and commercial imidazoline inhibitor in a sweet environment at carbon steel AISI 1045 in NaCl 3.5% solution

Author

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  • Mochamad Alvan Mifta Chusururi

    (Sepuluh Nopember Institute of Technology, Surabaya, Indonesia)

  • Dendra Ravelia

    (Sepuluh Nopember Institute of Technology, Surabaya, Indonesia)

  • Brahmanu Wisnu Saputro

    (Sepuluh Nopember Institute of Technology, Surabaya, Indonesia)

  • Fikri Nafi’ul Ahmadi

    (Sepuluh Nopember Institute of Technology, Surabaya, Indonesia)

  • Lukman Noerochiem

    (Sepuluh Nopember Institute of Technology, Surabaya, Indonesia)

  • Budi Agung Kurniawan

    (Sepuluh Nopember Institute of Technology, Surabaya, Indonesia)

Abstract

Organic inhibitor becomes alternative protection of corrosion because it is biodegradable, cheap, and also environmental friendly. This study evaluates the performance of imidazoline commercial inhibitor in a sweet environment. AISI 1045 carbon steel was chosen, with pH 5 and pH 7, flow rate 7.85 cm/s and 13.09 cm/s, and NaCl 3.5% solution. FTIR, XRD, Weight loss, Polarization, and Electrochemical Impedance Spectroscopy (EIS) tests were performed to obtain complete information regarding inhibitor’s performance. According to weight loss results at pH 5, the highest efficiency of inhibitor was 82.59% with 200 ppm inhibitor’s concentration, flow rate 7.85 cm/s, and corrosion rate of 0.104 mm/y. While at pH 7, the highest efficiency obtained was 92.697% in 100 ppm concentration of inhibitor, flow rate 7.85 cm/s, and corrosion rate 0.037 mm/y. XRD testing showed Fe24N10 compound formed as a result of reaction between Fe and the pyridine nitrogen atom. FTIR testing showed functional group of inhibitors precipitated on sample’s surface when immersed and EIS testing showed that the addition of the inhibitor concentration increased the value of polarization resistance of solution and the value of (constant phase element) decreased.

Suggested Citation

  • Mochamad Alvan Mifta Chusururi & Dendra Ravelia & Brahmanu Wisnu Saputro & Fikri Nafi’ul Ahmadi & Lukman Noerochiem & Budi Agung Kurniawan, 2018. "Comparison of corrosion inhibitor performance based on green corrosion inhibitor of extract leaf tobacco and commercial imidazoline inhibitor in a sweet environment at carbon steel AISI 1045 in NaCl 3," Journal of Applied and Physical Sciences, Prof. Vakhrushev Alexander, vol. 4(1), pages 14-25.
  • Handle: RePEc:apb:japsss:2018:p:14-25
    DOI: 10.20474/japs-4.1.3
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    References listed on IDEAS

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    1. Zakkiyah Azri & Noor Johan Ae & Warsito, 2017. "Absorbance Value of Tobacco (Nicotiana Tabacum) Essential Oil to Ultraviolet Radiation in the Way to Investigate the Potential of Tobacco Leaf for Sunscreen Substance," International Journal of Applied and Physical Sciences, Dr K.Vivehananthan, vol. 3(2), pages 50-54.
    2. Patama Bunruk & Duangporn Kantachote & Ampaitip Sukhoom, 2017. "Isolation and selection of purple non-sulfur bacteria for phosphate removal in rearing water from shrimp cultivation," Journal of Applied and Physical Sciences, Prof. Vakhrushev Alexander, vol. 3(2), pages 73-80.
    3. Noraini Mahmad & Rosna Mat Taha & Norlina Rawi & Sadegh Mohajer, 2015. "The effects of picloram and 2,4-dichlorophenoxyacetic acid on induction of red coloured callus from celosia plumosa, an attractive ornamental plant," Journal of Applied and Physical Sciences, Prof. Vakhrushev Alexander, vol. 1(1), pages 9-12.
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    Cited by:

    1. Mansurova I. A. & Burkov A. A. & Shilov I. B. & Shirokova Ye. S. & Dolgiy E. O. & Khousainov A. B. & Belozerov V. S., 2018. "Relaxtion Behavior of Elastomer Composites: The Effect of a Hybrid Carbon Black/Carbon Nanotubes Filler," International Journal of Applied and Physical Sciences, Dr K.Vivehananthan, vol. 4(3), pages 76-80.
    2. Latief Mahir Rachman, 2018. "Technical development to assess soil health using soil health index in Indonesia," Journal of Applied and Physical Sciences, Prof. Vakhrushev Alexander, vol. 4(3), pages 79-85.

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    More about this item

    Keywords

    CO2; Corrosion; Imidazoline inhibitor; AISI 1045;
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